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通过控制残余应力使金属玻璃具备可塑性。

Making metallic glasses plastic by control of residual stress.

作者信息

Zhang Y, Wang W H, Greer A L

机构信息

Department of Materials Science & Metallurgy, University of Cambridge, Pembroke Street, Cambridge CB2 3QZ, UK.

出版信息

Nat Mater. 2006 Nov;5(11):857-60. doi: 10.1038/nmat1758. Epub 2006 Oct 15.

Abstract

Metallic glasses, now that many compositions can be made in bulk, are of interest for structural applications exploiting their yield stress and yield strain, which are exceptionally high for metallic materials. Their applicability is limited by their near-zero tensile ductility resulting from work-softening and shear localization. Even though metallic glasses can show extensive local plasticity, macroscopically they can effectively be brittle, and much current research is directed at improving their general plasticity. In conventional engineering materials as diverse as silicate glasses and metallic alloys, we can improve mechanical properties by the controlled introduction of compressive surface stresses. Here we demonstrate that we can controllably induce such residual stresses in a bulk metallic glass, and that they improve the mechanical performance, in particular the plasticity, but that the mechanisms underlying the improvements are distinct from those operating in conventional materials.

摘要

由于现在可以大量制备多种成分的金属玻璃,它们因具有屈服应力和屈服应变而在结构应用方面备受关注,而这些性能对于金属材料来说格外高。它们的适用性受到因加工软化和剪切局部化导致的近零拉伸延展性的限制。尽管金属玻璃可以表现出广泛的局部塑性,但宏观上它们实际上可能很脆,目前许多研究都致力于提高其整体塑性。在诸如硅酸盐玻璃和金属合金等传统工程材料中,我们可以通过可控地引入压缩表面应力来改善机械性能。在此我们证明,我们能够在块状金属玻璃中可控地诱导出此类残余应力,并且这些应力能改善机械性能,尤其是塑性,不过性能改善背后的机制与传统材料中的不同。

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